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作 者:褚明辉[1] 吴庆[1,2] 王建[1,2] 黄先[1,2] 刘学彦[1] 申德振[1] 蒋大鹏[1]
机构地区:[1]中国科学院长春光学精密机械与物理研究所激发态物理重点实验室,吉林长春130033 [2]中国科学院研究生院,北京100049
出 处:《发光学报》2009年第1期77-80,共4页Chinese Journal of Luminescence
基 金:吉林省科技发展计划重点资助项目(20070317)
摘 要:对蓝光芯片加黄色荧光粉制备白光LED方法的流明效率进行了理论计算。根据光度学原理,我们考虑到视觉函数V(λ)的修正,以色坐标为x=0.325,y=0.332,显色指数为81.5,色温为5914K的白光LED发光光谱为依据,计算了白光LED流明效率的理论极限:得出每瓦白光LED辐射光功率产生的光通量为298.7lm,白光LED发射的总光子数为2.7×1018。在理想情况下,注入一个电子-孔穴对产生一个蓝光光子,设荧光粉的量子效率为1,因此,注入的电子-孔穴对数亦等于白光光子数,进而计算出白光LED每辐射1W的光功率所需的电功率为1.51W,上述白光LED发光光谱对应的白光LED的电-光转换的理论极限流明效率为197.8lm/W。The luminous flux efficiency of white LED combining blue LED chip and YAG: Ce yellow phosphor was calculated theoretically. According to the principle of photometry and considering the modification of the vision function V( A ) , the theoretical limitation of luminous flux efficiency for white LED was calculated from the emission spectrum of the white LED at the condition of the chromaticity coordinate x = 0. 325, y = 0. 322, the rendering index 81.5, and the color temperature 5 913 K. The result showed that the luminous flux for LW white LED radiation power output is 298.7 lm and the total photons are 2.7 × 10^18. If under ideal conditions, one electron-hole pair injected yields one blue photon and the quantum efficiency of the phosphor equals one, the numbers of electron-hole pair must equal to the numbers of white photons. So LW white LED radiation power output has to consume 1.51 W electric powers and the luminous flux efficiency limitation of electrical to optical conversion for the white LED is 197.8 lm/W at above condition.
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